100 % original. Más de 100 000 piezas en stock. Listas para enviar.

  • es

Triconex 3000510-380 Industrial System Cable Assembly

The Triconex 3000510-380, also cataloged as the 3000510-380 Industrial System Cable Assembly, operates as a dedicated hardware component for high-integrity signal and power transmission within Triconex TMR Safety Instrumented Systems. Configured for noise-immune inter-rack connectivity, the assembly links Triconex TMR controllers directly to I/O module baseplates to maintain continuous, deterministic data paths across the local system architecture.

Hardware Specifications

Parameter Specification
Model 3000510-380 (9563-8)
Brand Triconex
Origin United States
Weight 2 kg
Dimensions 3.8 m (Standard Cable Length)
Operating Temp -40 to +85 deg C
Storage Temp -55 to +105 deg C
Power Consumption Passive (2 A current rating per conductor maximum)
Cable Type Shielded multi-conductor industrial cable
Conductor Gauge 22 to 24 AWG stranded copper
Insulation High-temperature PVC/Teflon insulation
Voltage Rating 300 V AC/DC
Resistance Less than 0.05 ohm/km
Insulation Resistance Greater than 100 M-ohm
Shielding Braided copper shield with 85% coverage
Humidity 5% to 95% non-condensing
Certifications IEC 61508 SIL 3, UL, CE

Triple Modular Redundant Safety Control

The cable assembly provides the physical layer foundation necessary to sustain a certified triple modular redundancy (TMR) 2oo3 architecture across separate chassis divisions. By incorporating separate, isolated conductor groupings within a single high-durability jacket, the assembly prevents cross-channel electrical faults from compromising parallel logic branches. Robust galvanic isolation vectors are preserved through dense insulation materials rated up to 300 V, facilitating deterministic fail-safe state execution by ensuring that corrupted or shorted conductors do not bleed transients into adjoining safety channels.

Frequently Asked Questions

Q: Does the insertion or removal of this cable assembly under live system power interrupt the active 2oo3 safety voting mechanism?

A: Yes. Unlike individual hot-swappable I/O modules, disconnecting a primary system cable assembly breaks the communication backplane link between the controller and the I/O baseplate. This causes an immediate channel fault or a fail-safe shutdown depending on the system redundancy configuration.

Q: How does the internal shielding structure mitigate high-frequency electromagnetic interference in environments with severe electrical noise?

A: The cable utilizes an integrated braided copper shield providing 85% physical coverage. This shield intercepts radiated electromagnetic and radio-frequency interference (EMI/RFI), shunting induced currents away from the internal 22-24 AWG signaling conductors to prevent data corruption.

Field Installation Guidelines

  • Bend Radius and Mechanical Stress Management: Maintain the minimum recommended dynamic bend radius during installation routing to prevent conductor fatigue or jacket breaches. Avoid routing the cable assembly over sharp metal edges or structural support beams without protective conduit or grommets.
  • Shield Grounding and Drain Wire Termination: Connect the braided copper shield drain wires directly to the designated functional earth busbar on the controller chassis rack. Ensure termination points are tight to establish a low-impedance ground path, and never allow the shield to float at both ends.
  • Separation from High-Voltage Infrastructure: Route the cable assembly through dedicated low-voltage instrument cable trays. Maintain strict physical separation distances from high-power AC motor drives, distribution lines, and inductive switching fields to prevent signal cross-talk.

¿Qué dicen nuestros clientes sobre nosotros?

Translation missing: es.general.search.loading